Publication | Open Access
Ultrasound-assisted alkaline extraction of protein from Tenebrio molitor larvae: Extraction kinetics, physiochemical, and functional traits
45
Citations
42
References
2023
Year
EngineeringFood AnalysisExtraction KineticsAlkaline ExtractionUltrasound-assisted Alkaline ExtractionProtein PurificationPower UltrasoundBioanalysisBiochemical EngineeringAnalytical ChemistryFood TechnologyChromatographyEdible Insect ProteinBiochemistryExtraction ProcessingAlternative Protein SourceUltrasoundTenebrio Molitor LarvaeBiologyNatural SciencesBiotechnologyProtein Engineering
Currently, as a promising alternative protein source, the interest of edible insect protein has been continuously increased. However, the extraction processing had distinct effects on the physicochemical properties and functionalities of this novel and sustainable protein. In this study, Tenebrio molitor larvae protein (TMLP) was extracted via ultrasound (US)-assisted alkaline extraction. The changes of extraction kinetics, physicochemical characteristics, and functional properties of TMLP as a function of US time (10, 20, 30, 40, 50 min) were investigated. The results showed that 30 min US treatment rendered the maximum protein yield (60.04 %) (P < 0.05). Meanwhile, Peleg's model was considered a suitable model to represent the extraction kinetics of TMLP, with a correlation coefficient of 0.9942. Moreover, the protein secondary structure, particle size, and amino acid profiles of TMLP were changed under the US-assisted alkaline extraction process. Additionally, a significant improvement of the functional properties of TMLP extracted with this method was observed compared to traditional alkaline extraction. In conclusion, the present work suggests that US-assisted alkaline extraction could be considered as a potential method to improve the protein yield, quality profiles, and functional properties of TMLP.
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